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Microstructure Characterization and Corrosion Resistance of Zinc Coating Obtained on High-Strength Grade 10.9 Bolts Using a New Thermal Diffusion Process

机译:使用新的热扩散工艺在高强度等级10.9螺栓上获得的锌涂层的组织特征和耐腐蚀性

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摘要

The article presents the results of research on the application of innovative thermal diffusion zinc coating technology with the recirculation of the reactive atmosphere to high-strength grade 10.9 bolts. The innovation of this method consists in the introduction of reactive atmosphere recirculation and the application of coating powder mix which contains zinc powder and activator. Recirculation of the reactive atmosphere ensures its uniform composition, while the presence of an activator intensifies the process of saturating steel surface with zinc, which boosts the efficiency of active agents. Coatings were created at 440 °C and a heat soaking time of 30–240 min. Coating structure (SEM) was exposed, chemical composition in microsites (EDS) was defined, and coating phase structure (XRD) was identified. The kinetics of coating growth were defined. It was found that the increment of coating thickness was controlled by square root of soaking time. Coatings obtained using innovative thermal diffusion zinc coating technology had a two-layer structure. At the substrate, a compact layer of phase Γ1 (Fe11Zn40) was created, which was covered with a layer of phase δ1 (FeZn10). The new method of thermal diffusion zinc coating will alow for the creation of coatings of very good corrosion resistance while maintaining strength properties of bolts defined as strength class 10.9.
机译:本文介绍了将创新的热扩散镀锌技术与反应性气氛再循环至高强度等级10.9螺栓的应用研究结果。该方法的创新之处在于引入反应性气氛再循环以及应用包含锌粉和活化剂的涂料粉末混合物。反应性气氛的再循环确保了其均匀的组成,而活化剂的存在则增强了用锌使钢表面饱和的过程,从而提高了活性剂的效率。在440°C和30–240分钟的均热时间下形成涂层。暴露涂层结构(SEM),确定微场所的化学成分(EDS),并确定涂层相结构(XRD)。定义了涂层生长的动力学。发现涂层厚度的增加受均热时间的平方根控制。使用创新的热扩散锌涂层技术获得的涂层具有两层结构。在基板上,创建了一层紧密的Γ1相(Fe11Zn40)相,并覆盖了一层δ1(FeZn10)相。热扩散锌涂层的新方法将可用于创建具有非常好的耐腐蚀性的涂层,同时保持螺栓的强度特性(强度等级为10.9)。

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